arrow
返回

Low-Voltage Continuous Electrospinning Patterning

delete2016-11-17
delete83
delete
OA
AI
X
Xia Li
Z
Zhaoying Li
L
Liyun Wang
G
Guokun Ma
F
Fanlong Meng
R
Robyn H. Pritchard
E
Elisabeth Gill
刘
刘晔 (Ye Liu)
Y
Yan Yan Shery Huang *
DOI:10.1021/acsami.6b07797delete
delete原文链接
delete分享
delete收藏
查看原文
摘要

摘要

En 中文
Electrospinning is a versatile technique for the construction of microfibrous and nanofibrous structures with considerable potential in applications ranging from textile manufacturing to tissue engineering scaffolds. In the simplest form, electrospinning uses a high voltage of tens of thousands volts to draw out ultrafine polymer fibers over a large distance. However, the high voltage limits the flexible combination of material selection, deposition substrate, and control of patterns. Prior studies show that by performing electrospinning with a well-defined near-field condition, the operation voltage can be decreased to the kilovolt range, and further enable more precise patterning of fibril structures on a planar surface. In this work, by using solution dependent initiators, we demonstrate a further lowering of a 0.11 voltage with an ultralow voltage continuous electrospinning patterning (LEP) technique, which reduces the applied voltage threshold to as low as 50 V, simultaneously permitting direct fiber patterning. The versatility of LEP is shown using a wide range of combination of polymer and solvent systems for thermoplastics and biopolymers. Novel functionalities are also incorporated when a low voltage mode is used in place of a high voltage mode, such as direct printing of living bacteria; the construction of suspended single fibers and membrane networks. The LEP technique reported here should open up new avenues in the patterning of bioelements and free-form nano- to microscale fibrous structures.
Keyword:
electrospinning
direct writing
bacteria patterning
3D architectures
biomembrane
biofabrication
nanofibre
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

ACS Applied Materials and Interfaces 封面图
ACS Applied Materials and Interfaces
IF:
8.2
论文数:
6.1W
被引数:
38.7W

机构

J
Jiangnan University
学者数:
3.9W
论文数: 2.7W
被引数: 4.7W
U
University of Cambridge
学者数:
7.7W
论文数: 7.1W
被引数: 13.7W
引用论文

引用论文

U.S. Solar Photovoltaic System Cost Benchmark: Q1 2016美国太阳能光伏系统成本基准: 第一季度2016
err
IF0
err2016-09-01
err0
errOAAI
errRan Fu; Donald Chung; Travis Lowder; David Feldman; Kristen Ardani; Robert Margolis
err分享
err收藏
Patterning of light-emitting conjugated polymer nanofibres
err2008-08-24
err173
PREAI
errDi Benedetto, Francesca; Camposeo, Andrea; Pagliara, Stefano; Mele, Elisa; Persano, Luana; Stabile, Ripalta; Cingolani, Roberto; Pisignano, Dario
err分享
err收藏
Reinforcement of hydrogels using three-dimensionally printed microfibres
err2015-04-28
err601
errOAAI
errVisser, Jetze; Melchels, Ferry P. W.; Jeon, June E.; van Bussel, Erik M.; Kimpton, Laura S.; Byrne, Helen M.; Dhert, Wouter J. A.; Dalton, Paul D.; Hutmacher, Dietmar W.; Malda, Jos
err分享
err收藏
Polymeric nanowire chemical sensor
err2004-02-27
err751
PREAI
errLiu, HQ; Kameoka, J; Czaplewski, DA; Craighead, HG
err分享
err收藏
Electrospun Microfiber Membranes Embedded with Drug-Loaded Clay Nanotubes for Sustained Antimicrobial Protection
err2015-01-16
err276
PREAI
errXue, Jiajia; Niu, Yuzhao; Gong, Min; Shi, Rui; Chen, Dafu; Zhang, Liqun; Lvov, Yuri
err分享
err收藏
err分享
err收藏
Near-field electrospinning
err2006-03-22
err702
errOAAI
errSun, DH; Chang, C; Li, S; Lin, LW
err分享
err收藏
Direct drawing of suspended filamentary micro- and nanostructures from liquid polymers
err2004-09-03
err183
PREAI
errHarfenist, SA; Cambron, SD; Nelson, EW; Berry, SM; Isham, AW; Crain, MM; Walsh, KM; Keynton, RS; Cohn, RW
err分享
err收藏
学者 查看更多内容